In the fast-evolving landscape of automotive electronics, the NXP TJA1040T/CM,118 stands as a beacon of innovation. As a high-speed CAN transceiver, it caters to the ever-increasing demands for reliable communication in modern vehicles. In this article, we will unravel the intricacies of the TJA1040T/CM,118, exploring its definition, key features, specifications, applications, and the manufacturer's insights.
The NXP TJA1040T/CM,118 is a high-speed CAN transceiver, a crucial component in automotive electronics. CAN, short for Controller Area Network, is the communication protocol that allows various electronic control units (ECUs) in a vehicle to communicate with each other. The TJA1040T/CM,118 ensures seamless data exchange, operating at an impressive 1MBd data rate.
· The TJA1040T/CM,118 seamlessly integrates with automotive systems, adhering to the ISO 11898 standard for enhanced compatibility.
· With a power-down standby mode, it prioritizes energy efficiency, crucial for optimizing power consumption in automotive applications.
· Operating between 4.75V to 5.25V, the transceiver ensures stability in varying supply conditions, with a typical operating voltage of 5V.
· Built to withstand automotive challenges, the TJA1040T/CM,118 meets the rigorous AEC-Q100 automotive-grade standards for quality and reliability.
Specifications
Let's delve deeper into the specifications that set the TJA1040T/CM apart:
Type | Parameter |
Product Category | Transceiver |
Manufacture Type | High Speed CAN Transceiver |
Maximum Data Rate | 1MBd |
Number of Transceivers | 1 |
Standard Supported | ISO 11898 |
Minimum Operating Supply Voltage (V) | 4.75 |
Typical Operating Supply Voltage (V) | 5 |
Maximum Operating Supply Voltage (V) | 5.25 |
Maximum Supply Current (mA) | 70 |
Power Down Mode | Standby |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 150 |
Supplier Temperature Grade | Automotive |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 1.45(Max) |
Package Width | 4(Max) |
Package Length | 5(Max) |
PCB changed | 8 |
Standard Package Name | SO |
Supplier Package | SO |
Pin Count | 8 |
The TJA1040T/CM,118 finds its applications in various automotive systems, including but not limited to:
· Engine Control Units (ECUs): The TJA1040T/CM,118 facilitates seamless communication between ECUs, ensuring efficient coordination for optimal engine performance.
· Transmission Control Units (TCUs): In TCUs, the transceiver plays a pivotal role in real-time data exchange, enhancing the precision and responsiveness of transmission systems.
· Advanced Driver Assistance Systems (ADAS): For ADAS, the TJA1040T/CM,118 enables quick and reliable communication between various sensors and control units, contributing to enhanced safety features.
· Body Control Modules (BCMs): Within BCMs, the transceiver supports the coordination of various electronic functions, from lighting control to security systems.
· Infotainment Systems: The TJA1040T/CM,118 ensures high-speed data transfer in infotainment systems, contributing to a seamless multimedia experience for vehicle occupants.
Its versatility and reliability make it an indispensable component in the automotive electronics ecosystem.
Freescale Semiconductor, Inc., now seamlessly integrated into NXP Semiconductors, stands as a pioneering force in the semiconductor industry. Renowned for its cutting-edge technologies, Freescale Semiconductor played a pivotal role in shaping the landscape of embedded solutions and microcontrollers. With a commitment to innovation and a rich legacy, the company has consistently delivered high-performance semiconductor solutions, catering to a diverse range of industries. Following its merger with NXP Semiconductors, a global semiconductor powerhouse, the legacy of Freescale continues to thrive, fostering advancements in automotive, industrial, and IoT applications.
In conclusion, the NXP TJA1040T/CM,118 transcends the conventional boundaries of high-speed CAN transceivers. With its ISO 11898 compliance, power efficiency, and automotive-grade resilience, it emerges as a cornerstone in the advancement of automotive electronics.